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Microelectronic neural bridging of toad nerves to restore leg function 被引量:1

Microelectronic neural bridging of toad nerves to restore leg function
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摘要 The present study used a microelectronic neural bridge comprised of electrode arrays for neural signal detection, functional electrical stimulation, and a microelectronic circuit including signal amplifying, processing, and functional electrical stimulation to bridge two separate nerves, and to restore the lost function of one nerve. The left leg of one spinal toad was subjected to external mechanical stimulation and functional electrical stimulation driving. The function of the left leg of one spinal toad was regenerated to the corresponding leg of another spinal toad using a microelectronic neural bridge. Oscilloscope tracings showed that the electromyographic signals from controlled spinal toads were generated by neural signals that controlled the spinal toad, and there was a delay between signals. This study demonstrates that microelectronic neural bridging can be used to restore neural function between different injured nerves. The present study used a microelectronic neural bridge comprised of electrode arrays for neural signal detection, functional electrical stimulation, and a microelectronic circuit including signal amplifying, processing, and functional electrical stimulation to bridge two separate nerves, and to restore the lost function of one nerve. The left leg of one spinal toad was subjected to external mechanical stimulation and functional electrical stimulation driving. The function of the left leg of one spinal toad was regenerated to the corresponding leg of another spinal toad using a microelectronic neural bridge. Oscilloscope tracings showed that the electromyographic signals from controlled spinal toads were generated by neural signals that controlled the spinal toad, and there was a delay between signals. This study demonstrates that microelectronic neural bridging can be used to restore neural function between different injured nerves.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2013年第6期546-553,共8页 中国神经再生研究(英文版)
基金 supported by the National Natural Science Foundation of China,No,90707005,61001046 and 61204018 the Natural Science Foundation of Education Department of Jiangsu Province,No.11KJB510023 the Special Foundation and Open Foundation of State Key Laboratory of Bioelectronics of Southeast University,No.2011E05
关键词 neural regeneration basic research microelectronic neural bridge electromyographic signal coherence function nerve injury spinal reflex arc spinal toad grants-supported paper photographs-containing paper neuroregeneration neural regeneration basic research microelectronic neural bridge electromyographic signal coherence function nerve injury spinal reflex arc spinal toad grants-supported paper photographs-containing paper neuroregeneration
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